LRRC8D Suppresses Prostate Cancer Growth and Enhances Platinum Sensitivity via Modulation of CAV-1/STAT3 Signaling

  • Membranes (Basel). 2026 Jun 8;16(6):198. doi: 10.3390/membranes16060198.
Rong Xu  1  2 Xue Shui  1  3 Hao Han  1 Yanzi Xing  1 Caiqin Zhang  1 Pengpeng Wu  1 Yong Zhao  1 Dengxu Tan  1 Jing Qin  1 Xiaoming Wang  2 Changhong Shi  1
Affiliations
  • 1. Division of Cancer Biology, Laboratory Animal Center, The Air Force Military Medical University, Xi'an 710032, China.
  • 2. Department of Geriatrics, Xijing Hospital, The Air Force Military Medical University, Xi'an 710032, China.
  • 3. Department of Pathology, The First Affiliated Hospital of the Army Medical University, Chongqing 400038, China.
Abstract

Neuroendocrine prostate Cancer (NEPC) is a lethal subtype of prostate Cancer (PCa) that emerges under androgen deprivation and is associated with therapeutic resistance. The contribution of volume-regulated anion channels (VRACs) to this process remains poorly understood. This study identified leucine-rich repeat-containing 8 subunit D (LRRC8D), a VRAC subunit, as the only family member consistently downregulated in NEPC and associated with neuroendocrine (NE)-like features. LRRC8D downregulation was accompanied by suppression of swelling-activated VRAC currents, increased synaptophysin (SYP) expression, decreased cisplatin sensitivity, and neurosecretory remodeling. Conversely, LRRC8D overexpression enhanced cisplatin-induced Apoptosis, reduced colony formation, and suppressed tumor growth in xenograft models, including under cisplatin treatment. Consistent alterations in LRRC8D and SYP expression were also observed in enzalutamide-resistant patient-derived organoids. Mechanistically, RE1-silencing transcription factor (REST) promoted LRRC8D transcription. Functional analyses further demonstrated that CAV-1 acted upstream of LRRC8D, and LRRC8D negatively regulated STAT3 activation. Together, these findings indicate that LRRC8D influences PCa phenotype and platinum responsiveness, and implicate a regulatory axis involving LRRC8D and CAV-1/STAT3 signaling in NE-associated features of advanced PCa. Functional analyses further showed that CAV-1 acted upstream of LRRC8D, and LRRC8D negatively regulated STAT3 activation. Together, these findings indicate that LRRC8D influences PCa phenotype and platinum responsiveness and implicate a regulatory axis involving LRRC8D and CAV-1/STAT3 signaling in NE-associated features of advanced PCa.

Keywords
cisplatin; leucine-rich repeat protein; neuroendocrine tumors; prostate cancer; volume-regulated anion channel.
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